Oncode Institute, Hubrecht Institute - KNAW and University Medical Center Utrecht, Utrecht, Netherlands.
Elife. 2022 Feb 1;11:e71356. doi: 10.7554/eLife.71356.
Accurate control of the cell cycle is critical for development and tissue homeostasis, and requires precisely timed expression of many genes. Cell cycle gene expression is regulated through transcriptional and translational control, as well as through regulated protein degradation. Here, we show that widespread and temporally controlled mRNA decay acts as an additional mechanism for gene expression regulation during the cell cycle in human cells. We find that two waves of mRNA decay occur sequentially during the mitosis-to-G1 phase transition, and we identify the deadenylase CNOT1 as a factor that contributes to mRNA decay during this cell cycle transition. Collectively, our data show that, akin to protein degradation, scheduled mRNA decay helps to reshape cell cycle gene expression as cells move from mitosis into G1 phase.
准确的细胞周期控制对于发育和组织稳态至关重要,需要精确地定时表达许多基因。细胞周期基因表达受转录和翻译控制以及受调节的蛋白质降解的调控。在这里,我们表明广泛且具有时间控制的 mRNA 衰减作为人类细胞中细胞周期中基因表达调控的附加机制。我们发现,在有丝分裂到 G1 期过渡期间,mRNA 衰减会发生两波顺序衰减,并且我们确定去腺苷酸化酶 CNOT1 是在此细胞周期过渡期间促进 mRNA 衰减的因素。总的来说,我们的数据表明,类似于蛋白质降解,预定的 mRNA 衰减有助于在细胞从有丝分裂进入 G1 期时重塑细胞周期基因表达。